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RNA recognition by the embryonic cell fate determinant and germline totipotency factor MEX-3

机译:胚胎细胞命运决定因素和种系全能因子MEX-3对RNA的识别

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摘要

Totipotent stem cells have the potential to differentiate into every cell type. Renewal of totipotent stem cells in the germline and cellular differentiation during early embryogenesis rely upon posttranscriptional regulatory mechanisms. The Caenorhabditis elegans RNA binding protein, MEX-3, plays a key role in both processes. MEX-3 is a maternally-supplied factor that controls the RNA metabolism of transcripts encoding critical cell fate determinants. However, the nucleotide sequence specificity and requirements of MEX-3 mRNA recognition remain unclear. Only a few candidate regulatory targets have been identified, and the full extent of the network of MEX-3 targets is not known. Here, we define the consensus sequence required for MEX-3 RNA recognition and demonstrate that this element is required for MEX-3 dependent regulation of gene expression in live worms. Based on this work, we identify several candidate MEX-3 targets that help explain its dual role in regulating germline stem cell totipotency and embryonic cell fate specification.
机译:全能干细胞具有分化为每种细胞类型的潜力。生殖全能干细胞的更新和早期胚胎发生过程中的细胞分化取决于转录后的调控机制。秀丽隐杆线虫RNA结合蛋白MEX-3在这两个过程中都起着关键作用。 MEX-3是母体提供的因子,可控制编码关键细胞命运决定因素的转录本的RNA代谢。但是,尚不清楚MEX-3 mRNA识别的核苷酸序列特异性和要求。仅确定了几个候选监管目标,并且尚不清楚MEX-3目标网络的全部范围。在这里,我们定义了MEX-3 RNA识别所需的共有序列,并证明了该元素是活蠕虫中MEX-3依赖性基因表达调控所必需的。基于这项工作,我们确定了几个候选MEX-3目标,这些目标有助于解释其在调节种系干细胞全能性和胚胎细胞命运规范中的双重作用。

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